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@@ -68,6 +68,15 @@
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#define OMAP_RTC_IRQWAKEEN 0x7c
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+#define OMAP_RTC_ALARM2_SECONDS_REG 0x80
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+#define OMAP_RTC_ALARM2_MINUTES_REG 0x84
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+#define OMAP_RTC_ALARM2_HOURS_REG 0x88
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+#define OMAP_RTC_ALARM2_DAYS_REG 0x8c
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+#define OMAP_RTC_ALARM2_MONTHS_REG 0x90
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+#define OMAP_RTC_ALARM2_YEARS_REG 0x94
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+
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+#define OMAP_RTC_PMIC_REG 0x98
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+
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/* OMAP_RTC_CTRL_REG bit fields: */
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#define OMAP_RTC_CTRL_SPLIT BIT(7)
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#define OMAP_RTC_CTRL_DISABLE BIT(6)
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@@ -80,6 +89,7 @@
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/* OMAP_RTC_STATUS_REG bit fields: */
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#define OMAP_RTC_STATUS_POWER_UP BIT(7)
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+#define OMAP_RTC_STATUS_ALARM2 BIT(7)
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#define OMAP_RTC_STATUS_ALARM BIT(6)
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#define OMAP_RTC_STATUS_1D_EVENT BIT(5)
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#define OMAP_RTC_STATUS_1H_EVENT BIT(4)
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@@ -89,6 +99,7 @@
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#define OMAP_RTC_STATUS_BUSY BIT(0)
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/* OMAP_RTC_INTERRUPTS_REG bit fields: */
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+#define OMAP_RTC_INTERRUPTS_IT_ALARM2 BIT(4)
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#define OMAP_RTC_INTERRUPTS_IT_ALARM BIT(3)
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#define OMAP_RTC_INTERRUPTS_IT_TIMER BIT(2)
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@@ -98,6 +109,9 @@
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/* OMAP_RTC_IRQWAKEEN bit fields: */
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#define OMAP_RTC_IRQWAKEEN_ALARM_WAKEEN BIT(1)
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+/* OMAP_RTC_PMIC bit fields: */
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+#define OMAP_RTC_PMIC_POWER_EN_EN BIT(16)
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+
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/* OMAP_RTC_KICKER values */
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#define KICK0_VALUE 0x83e70b13
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#define KICK1_VALUE 0x95a4f1e0
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@@ -106,6 +120,7 @@ struct omap_rtc_device_type {
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bool has_32kclk_en;
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bool has_kicker;
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bool has_irqwakeen;
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+ bool has_pmic_mode;
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bool has_power_up_reset;
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};
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@@ -115,6 +130,7 @@ struct omap_rtc {
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int irq_alarm;
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int irq_timer;
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u8 interrupts_reg;
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+ bool is_pmic_controller;
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const struct omap_rtc_device_type *type;
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};
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@@ -345,6 +361,70 @@ static int omap_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alm)
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return 0;
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}
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+static struct omap_rtc *omap_rtc_power_off_rtc;
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+
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+/*
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+ * omap_rtc_poweroff: RTC-controlled power off
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+ *
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+ * The RTC can be used to control an external PMIC via the pmic_power_en pin,
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+ * which can be configured to transition to OFF on ALARM2 events.
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+ *
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+ * Notes:
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+ * The two-second alarm offset is the shortest offset possible as the alarm
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+ * registers must be set before the next timer update and the offset
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+ * calculation is too heavy for everything to be done within a single access
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+ * period (~15 us).
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+ *
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+ * Called with local interrupts disabled.
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+ */
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+static void omap_rtc_power_off(void)
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+{
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+ struct omap_rtc *rtc = omap_rtc_power_off_rtc;
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+ struct rtc_time tm;
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+ unsigned long now;
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+ u32 val;
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+
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+ /* enable pmic_power_en control */
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+ val = rtc_readl(rtc, OMAP_RTC_PMIC_REG);
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+ rtc_writel(rtc, OMAP_RTC_PMIC_REG, val | OMAP_RTC_PMIC_POWER_EN_EN);
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+
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+ /* set alarm two seconds from now */
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+ omap_rtc_read_time_raw(rtc, &tm);
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+ bcd2tm(&tm);
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+ rtc_tm_to_time(&tm, &now);
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+ rtc_time_to_tm(now + 2, &tm);
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+
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+ if (tm2bcd(&tm) < 0) {
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+ dev_err(&rtc->rtc->dev, "power off failed\n");
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+ return;
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+ }
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+
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+ rtc_wait_not_busy(rtc);
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+
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+ rtc_write(rtc, OMAP_RTC_ALARM2_SECONDS_REG, tm.tm_sec);
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+ rtc_write(rtc, OMAP_RTC_ALARM2_MINUTES_REG, tm.tm_min);
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+ rtc_write(rtc, OMAP_RTC_ALARM2_HOURS_REG, tm.tm_hour);
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+ rtc_write(rtc, OMAP_RTC_ALARM2_DAYS_REG, tm.tm_mday);
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+ rtc_write(rtc, OMAP_RTC_ALARM2_MONTHS_REG, tm.tm_mon);
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+ rtc_write(rtc, OMAP_RTC_ALARM2_YEARS_REG, tm.tm_year);
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+
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+ /*
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+ * enable ALARM2 interrupt
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+ *
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+ * NOTE: this fails on AM3352 if rtc_write (writeb) is used
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+ */
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+ val = rtc_read(rtc, OMAP_RTC_INTERRUPTS_REG);
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+ rtc_writel(rtc, OMAP_RTC_INTERRUPTS_REG,
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+ val | OMAP_RTC_INTERRUPTS_IT_ALARM2);
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+
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+ /*
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+ * Wait for alarm to trigger (within two seconds) and external PMIC to
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+ * power off the system. Add a 500 ms margin for external latencies
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+ * (e.g. debounce circuits).
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+ */
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+ mdelay(2500);
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+}
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+
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static struct rtc_class_ops omap_rtc_ops = {
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.read_time = omap_rtc_read_time,
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.set_time = omap_rtc_set_time,
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@@ -361,6 +441,7 @@ static const struct omap_rtc_device_type omap_rtc_am3352_type = {
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.has_32kclk_en = true,
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.has_kicker = true,
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.has_irqwakeen = true,
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+ .has_pmic_mode = true,
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};
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static const struct omap_rtc_device_type omap_rtc_da830_type = {
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@@ -412,6 +493,9 @@ static int __init omap_rtc_probe(struct platform_device *pdev)
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of_id = of_match_device(omap_rtc_of_match, &pdev->dev);
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if (of_id) {
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rtc->type = of_id->data;
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+ rtc->is_pmic_controller = rtc->type->has_pmic_mode &&
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+ of_property_read_bool(pdev->dev.of_node,
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+ "ti,system-power-controller");
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} else {
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id_entry = platform_get_device_id(pdev);
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rtc->type = (void *)id_entry->driver_data;
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@@ -460,6 +544,9 @@ static int __init omap_rtc_probe(struct platform_device *pdev)
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mask = OMAP_RTC_STATUS_ALARM;
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+ if (rtc->type->has_pmic_mode)
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+ mask |= OMAP_RTC_STATUS_ALARM2;
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+
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if (rtc->type->has_power_up_reset) {
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mask |= OMAP_RTC_STATUS_POWER_UP;
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if (reg & OMAP_RTC_STATUS_POWER_UP)
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@@ -520,6 +607,13 @@ static int __init omap_rtc_probe(struct platform_device *pdev)
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goto err;
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}
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+ if (rtc->is_pmic_controller) {
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+ if (!pm_power_off) {
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+ omap_rtc_power_off_rtc = rtc;
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+ pm_power_off = omap_rtc_power_off;
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+ }
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+ }
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+
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return 0;
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err:
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@@ -536,6 +630,12 @@ static int __exit omap_rtc_remove(struct platform_device *pdev)
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{
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struct omap_rtc *rtc = platform_get_drvdata(pdev);
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+ if (pm_power_off == omap_rtc_power_off &&
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+ omap_rtc_power_off_rtc == rtc) {
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+ pm_power_off = NULL;
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+ omap_rtc_power_off_rtc = NULL;
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+ }
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+
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device_init_wakeup(&pdev->dev, 0);
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/* leave rtc running, but disable irqs */
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